Evidence for seasonal cycles in deep‐sea fish abundances: A great migration in the deep SE Atlantic? Article Swipe
YOU?
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· 2020
· Open Access
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· DOI: https://doi.org/10.1111/1365-2656.13215
Animal migrations are of global ecological significance, providing mechanisms for the transport of nutrients and energy between distant locations. In much of the deep sea (>200 m water depth), the export of nutrients from the surface ocean provides a crucial but seasonally variable energy source to seafloor ecosystems. Seasonal faunal migrations have been hypothesized to occur on the deep seafloor as a result, but have not been documented. Here, we analyse a 7.5‐year record of photographic data from the Deep‐ocean Environmental Long‐term Observatory Systems seafloor observatories to determine whether there was evidence of seasonal (intra‐annual) migratory behaviours in a deep‐sea fish assemblage on the West African margin and, if so, identify potential cues for the behaviour. Our findings demonstrate a correlation between intra‐annual changes in demersal fish abundance at 1,400 m depth and satellite‐derived estimates of primary production off the coast of Angola. Highest fish abundances were observed in late November with a smaller peak in June, occurring approximately 4 months after corresponding peaks in primary production. Observed changes in fish abundance occurred too rapidly to be explained by recruitment or mortality, and must therefore have a behavioural driver. Given the recurrent patterns observed, and the established importance of bottom‐up trophic structuring in deep‐sea ecosystems, we hypothesize that a large fraction of the fish assemblage may conduct seasonal migrations in this region, and propose seasonal variability in surface ocean primary production as a plausible cause. Such trophic control could lead to changes in the abundance of fishes across the seafloor by affecting secondary production of prey species and/or carrion availability for example. In summary, we present the first evidence for seasonally recurring patterns in deep‐sea demersal fish abundances over a 7‐year period, and demonstrate a previously unobserved level of dynamism in the deep sea, potentially mirroring the great migrations so well characterized in terrestrial systems.
Related Topics
- Type
- article
- Language
- en
- Landing Page
- https://doi.org/10.1111/1365-2656.13215
- https://besjournals.onlinelibrary.wiley.com/doi/pdfdirect/10.1111/1365-2656.13215
- OA Status
- hybrid
- Cited By
- 28
- References
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- Related Works
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- OpenAlex ID
- https://openalex.org/W3008791843
Raw OpenAlex JSON
- OpenAlex ID
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https://openalex.org/W3008791843Canonical identifier for this work in OpenAlex
- DOI
-
https://doi.org/10.1111/1365-2656.13215Digital Object Identifier
- Title
-
Evidence for seasonal cycles in deep‐sea fish abundances: A great migration in the deep SE Atlantic?Work title
- Type
-
articleOpenAlex work type
- Language
-
enPrimary language
- Publication year
-
2020Year of publication
- Publication date
-
2020-03-21Full publication date if available
- Authors
-
Rosanna Milligan, E. Marian Scott, Daniel O. B. Jones, Brian J. Bett, Alan J. Jamieson, Robert O’Brien, Sofia Pereira Costa, Gilbert T. Rowe, Henry A. Ruhl, Ken Smith, Philippe de Susanne, Michael F. Vardaro, David M. BaileyList of authors in order
- Landing page
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https://doi.org/10.1111/1365-2656.13215Publisher landing page
- PDF URL
-
https://besjournals.onlinelibrary.wiley.com/doi/pdfdirect/10.1111/1365-2656.13215Direct link to full text PDF
- Open access
-
YesWhether a free full text is available
- OA status
-
hybridOpen access status per OpenAlex
- OA URL
-
https://besjournals.onlinelibrary.wiley.com/doi/pdfdirect/10.1111/1365-2656.13215Direct OA link when available
- Concepts
-
Trophic level, Oceanography, Abundance (ecology), Demersal fish, Deep sea, Pelagic zone, Demersal zone, Environmental science, Ecosystem, Seafloor spreading, Ecology, Biomass (ecology), Marine ecosystem, Fishery, Biology, Geology, FishTop concepts (fields/topics) attached by OpenAlex
- Cited by
-
28Total citation count in OpenAlex
- Citations by year (recent)
-
2025: 6, 2024: 3, 2023: 7, 2022: 4, 2021: 5Per-year citation counts (last 5 years)
- References (count)
-
69Number of works referenced by this work
- Related works (count)
-
10Other works algorithmically related by OpenAlex
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| abstract_inverted_index.Animal | 1 |
| abstract_inverted_index.across | 248 |
| abstract_inverted_index.and/or | 258 |
| abstract_inverted_index.cause. | 235 |
| abstract_inverted_index.energy | 16, 44 |
| abstract_inverted_index.export | 31 |
| abstract_inverted_index.faunal | 50 |
| abstract_inverted_index.fishes | 247 |
| abstract_inverted_index.global | 5 |
| abstract_inverted_index.margin | 107 |
| abstract_inverted_index.months | 161 |
| abstract_inverted_index.record | 74 |
| abstract_inverted_index.source | 45 |
| abstract_inverted_index.African | 106 |
| abstract_inverted_index.Angola. | 143 |
| abstract_inverted_index.Highest | 144 |
| abstract_inverted_index.Systems | 84 |
| abstract_inverted_index.analyse | 71 |
| abstract_inverted_index.between | 17, 122 |
| abstract_inverted_index.carrion | 259 |
| abstract_inverted_index.changes | 124, 169, 242 |
| abstract_inverted_index.conduct | 217 |
| abstract_inverted_index.control | 238 |
| abstract_inverted_index.crucial | 40 |
| abstract_inverted_index.depth), | 29 |
| abstract_inverted_index.distant | 18 |
| abstract_inverted_index.driver. | 189 |
| abstract_inverted_index.period, | 282 |
| abstract_inverted_index.present | 266 |
| abstract_inverted_index.primary | 137, 166, 230 |
| abstract_inverted_index.propose | 224 |
| abstract_inverted_index.rapidly | 175 |
| abstract_inverted_index.region, | 222 |
| abstract_inverted_index.result, | 63 |
| abstract_inverted_index.smaller | 154 |
| abstract_inverted_index.species | 257 |
| abstract_inverted_index.surface | 36, 228 |
| abstract_inverted_index.trophic | 201, 237 |
| abstract_inverted_index.whether | 89 |
| abstract_inverted_index.(>200 | 26 |
| abstract_inverted_index.7‐year | 281 |
| abstract_inverted_index.Abstract | 0 |
| abstract_inverted_index.November | 151 |
| abstract_inverted_index.Observed | 168 |
| abstract_inverted_index.Seasonal | 49 |
| abstract_inverted_index.demersal | 126, 276 |
| abstract_inverted_index.dynamism | 290 |
| abstract_inverted_index.evidence | 92, 269 |
| abstract_inverted_index.example. | 262 |
| abstract_inverted_index.findings | 118 |
| abstract_inverted_index.fraction | 211 |
| abstract_inverted_index.identify | 111 |
| abstract_inverted_index.observed | 148 |
| abstract_inverted_index.occurred | 173 |
| abstract_inverted_index.patterns | 193, 273 |
| abstract_inverted_index.provides | 38 |
| abstract_inverted_index.seafloor | 47, 60, 85, 250 |
| abstract_inverted_index.seasonal | 94, 218, 225 |
| abstract_inverted_index.summary, | 264 |
| abstract_inverted_index.systems. | 305 |
| abstract_inverted_index.variable | 43 |
| abstract_inverted_index.abundance | 128, 172, 245 |
| abstract_inverted_index.affecting | 252 |
| abstract_inverted_index.determine | 88 |
| abstract_inverted_index.estimates | 135 |
| abstract_inverted_index.explained | 178 |
| abstract_inverted_index.migratory | 96 |
| abstract_inverted_index.mirroring | 296 |
| abstract_inverted_index.nutrients | 14, 33 |
| abstract_inverted_index.observed, | 194 |
| abstract_inverted_index.occurring | 158 |
| abstract_inverted_index.plausible | 234 |
| abstract_inverted_index.potential | 112 |
| abstract_inverted_index.providing | 8 |
| abstract_inverted_index.recurrent | 192 |
| abstract_inverted_index.recurring | 272 |
| abstract_inverted_index.secondary | 253 |
| abstract_inverted_index.therefore | 185 |
| abstract_inverted_index.transport | 12 |
| abstract_inverted_index.7.5‐year | 73 |
| abstract_inverted_index.abundances | 146, 278 |
| abstract_inverted_index.assemblage | 102, 215 |
| abstract_inverted_index.behaviour. | 116 |
| abstract_inverted_index.behaviours | 97 |
| abstract_inverted_index.deep‐sea | 100, 204, 275 |
| abstract_inverted_index.ecological | 6 |
| abstract_inverted_index.importance | 198 |
| abstract_inverted_index.locations. | 19 |
| abstract_inverted_index.mechanisms | 9 |
| abstract_inverted_index.migrations | 2, 51, 219, 299 |
| abstract_inverted_index.mortality, | 182 |
| abstract_inverted_index.previously | 286 |
| abstract_inverted_index.production | 138, 231, 254 |
| abstract_inverted_index.seasonally | 42, 271 |
| abstract_inverted_index.unobserved | 287 |
| abstract_inverted_index.Long‐term | 82 |
| abstract_inverted_index.Observatory | 83 |
| abstract_inverted_index.behavioural | 188 |
| abstract_inverted_index.bottom‐up | 200 |
| abstract_inverted_index.correlation | 121 |
| abstract_inverted_index.demonstrate | 119, 284 |
| abstract_inverted_index.documented. | 68 |
| abstract_inverted_index.ecosystems, | 205 |
| abstract_inverted_index.ecosystems. | 48 |
| abstract_inverted_index.established | 197 |
| abstract_inverted_index.hypothesize | 207 |
| abstract_inverted_index.potentially | 295 |
| abstract_inverted_index.production. | 167 |
| abstract_inverted_index.recruitment | 180 |
| abstract_inverted_index.structuring | 202 |
| abstract_inverted_index.terrestrial | 304 |
| abstract_inverted_index.variability | 226 |
| abstract_inverted_index.Deep‐ocean | 80 |
| abstract_inverted_index.availability | 260 |
| abstract_inverted_index.hypothesized | 54 |
| abstract_inverted_index.photographic | 76 |
| abstract_inverted_index.Environmental | 81 |
| abstract_inverted_index.approximately | 159 |
| abstract_inverted_index.characterized | 302 |
| abstract_inverted_index.corresponding | 163 |
| abstract_inverted_index.observatories | 86 |
| abstract_inverted_index.significance, | 7 |
| abstract_inverted_index.intra‐annual | 123 |
| abstract_inverted_index.(intra‐annual) | 95 |
| abstract_inverted_index.satellite‐derived | 134 |
| cited_by_percentile_year.max | 99 |
| cited_by_percentile_year.min | 96 |
| corresponding_author_ids | https://openalex.org/A5079243129 |
| countries_distinct_count | 2 |
| institutions_distinct_count | 13 |
| corresponding_institution_ids | https://openalex.org/I203088144, https://openalex.org/I7882870 |
| sustainable_development_goals[0].id | https://metadata.un.org/sdg/14 |
| sustainable_development_goals[0].score | 0.8199999928474426 |
| sustainable_development_goals[0].display_name | Life below water |
| citation_normalized_percentile.value | 0.85916854 |
| citation_normalized_percentile.is_in_top_1_percent | False |
| citation_normalized_percentile.is_in_top_10_percent | False |